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Improving fast-ion confinement in high-performance discharges by suppressing Alfvén eigenmodes

G.J. Kramer, M. Podestà, C. Holcomb, L. Cui, N.N. Gorelenkov, B. Grierson, W.W. Heidbrink, R. Nazikian, W. Solomon, M.A. Van Zeeland2017年被引用 20Nuclear FusionIF 3出版社

We show that the degradation of fast-ion confinement in steady-state DIII-D discharges is quantitatively consistent with predictions based on the effects of multiple unstable Alfvén eigenmodes on beam-ion transport. Simulation and experiment show that increasing the radius where the magnetic safety factor has its minimum is effective in minimizing beam-ion transport. This is favorable for achieving high performance steady-state operation in DIII-D and future reactors. A comparison between the experiments and a critical gradient model, in which only equilibrium profiles were used to predict the most unstable modes, show that in a number of cases this model reproduces the measured neutron rate well.

日本語訳

我々は、定常状態のDIII-D放電における高速イオン閉じ込めの劣化が、ビームイオン輸送に対する複数の不安定なアルヴェーン固有モードの影響に基づく予測と定量的に一致することを示す。シミュレーションと実験は、磁気安全係数が最小となる半径を増加させることが、ビームイオン輸送を最小化するのに有効であることを示す。これは、DIII-Dおよび将来の炉における高性能定常状態運転の達成に有利である。実験と、最も不安定なモードを予測するために平衡プロファイルのみを使用した臨界勾配モデルとの比較は、多くの場合においてこのモデルが測定された中性子率をよく再現することを示す。

装置

diii-d中精度(概要文一致)

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Fusion Advanced Studies TorusAlfvén waveEnergetic ionAlfvén eigenmode
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